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Effect of ZrO(2) Nanomaterials on Wettability and Interfacial Characteristics of Al-19Cu-11Si-2Sn Filler Metal for Low Temperature Al to Cu Dissimilar Brazing

Dissimilar Al 3003 and Cu tubular components were successfully brazed without interface cracking using ZrO(2) nanomaterials reinforced with Al-19Cu-11Si-2Sn filler. The filler was initially cast using an induction furnace and processed into ring form for brazing. Al-19Cu-11Si-2Sn filler with coarse...

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Autores principales: Jung, Do-Hyun, Rajendran, Sri Harini, Jung, Jae-Pil
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6215161/
https://www.ncbi.nlm.nih.gov/pubmed/30282941
http://dx.doi.org/10.3390/nano8100784
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author Jung, Do-Hyun
Rajendran, Sri Harini
Jung, Jae-Pil
author_facet Jung, Do-Hyun
Rajendran, Sri Harini
Jung, Jae-Pil
author_sort Jung, Do-Hyun
collection PubMed
description Dissimilar Al 3003 and Cu tubular components were successfully brazed without interface cracking using ZrO(2) nanomaterials reinforced with Al-19Cu-11Si-2Sn filler. The filler was initially cast using an induction furnace and processed into ring form for brazing. Al-19Cu-11Si-2Sn filler with coarse CuAl(2) and Si phases (43 and 20 μm) were refined to 8 and 4 μm, respectively, after the addition of 0.1 wt. % ZrO(2) and shows significant improvement in the mechanical properties. ZrO(2) nanomaterials’ induced diffusion controlled growth mechanism is found be the responsible for the refinement of CuAl(2) intermetallic and Si particles. The wettability of Al-19Cu-11Si-2Sn-0.1ZrO(2) increased to 78.17% on Cu side and 93.19% on the Al side compared from 74.8% and 89.9%, respectively. Increase in the yield strength, ultimate tensile strength, and percentage elongation were noted for the brazed joints. Microstructure of induction brazed joint with 40 kW for 6 seconds using Al-19Cu-11Si-2Sn-0.1ZrO(2) filler shows thin interfacial CuAl(2) intermetallic compound along the copper side and inter-diffusion region along the aluminum side and their respective mechanism is discussed. The tensile strength of the joints increased with increasing the nanomaterials addition and shows a base metal fracture. Analysis of fractured samples shows the effectiveness of ZrO(2) reinforced filler in crack propagation through the filler.
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spelling pubmed-62151612018-11-14 Effect of ZrO(2) Nanomaterials on Wettability and Interfacial Characteristics of Al-19Cu-11Si-2Sn Filler Metal for Low Temperature Al to Cu Dissimilar Brazing Jung, Do-Hyun Rajendran, Sri Harini Jung, Jae-Pil Nanomaterials (Basel) Article Dissimilar Al 3003 and Cu tubular components were successfully brazed without interface cracking using ZrO(2) nanomaterials reinforced with Al-19Cu-11Si-2Sn filler. The filler was initially cast using an induction furnace and processed into ring form for brazing. Al-19Cu-11Si-2Sn filler with coarse CuAl(2) and Si phases (43 and 20 μm) were refined to 8 and 4 μm, respectively, after the addition of 0.1 wt. % ZrO(2) and shows significant improvement in the mechanical properties. ZrO(2) nanomaterials’ induced diffusion controlled growth mechanism is found be the responsible for the refinement of CuAl(2) intermetallic and Si particles. The wettability of Al-19Cu-11Si-2Sn-0.1ZrO(2) increased to 78.17% on Cu side and 93.19% on the Al side compared from 74.8% and 89.9%, respectively. Increase in the yield strength, ultimate tensile strength, and percentage elongation were noted for the brazed joints. Microstructure of induction brazed joint with 40 kW for 6 seconds using Al-19Cu-11Si-2Sn-0.1ZrO(2) filler shows thin interfacial CuAl(2) intermetallic compound along the copper side and inter-diffusion region along the aluminum side and their respective mechanism is discussed. The tensile strength of the joints increased with increasing the nanomaterials addition and shows a base metal fracture. Analysis of fractured samples shows the effectiveness of ZrO(2) reinforced filler in crack propagation through the filler. MDPI 2018-10-03 /pmc/articles/PMC6215161/ /pubmed/30282941 http://dx.doi.org/10.3390/nano8100784 Text en © 2018 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Jung, Do-Hyun
Rajendran, Sri Harini
Jung, Jae-Pil
Effect of ZrO(2) Nanomaterials on Wettability and Interfacial Characteristics of Al-19Cu-11Si-2Sn Filler Metal for Low Temperature Al to Cu Dissimilar Brazing
title Effect of ZrO(2) Nanomaterials on Wettability and Interfacial Characteristics of Al-19Cu-11Si-2Sn Filler Metal for Low Temperature Al to Cu Dissimilar Brazing
title_full Effect of ZrO(2) Nanomaterials on Wettability and Interfacial Characteristics of Al-19Cu-11Si-2Sn Filler Metal for Low Temperature Al to Cu Dissimilar Brazing
title_fullStr Effect of ZrO(2) Nanomaterials on Wettability and Interfacial Characteristics of Al-19Cu-11Si-2Sn Filler Metal for Low Temperature Al to Cu Dissimilar Brazing
title_full_unstemmed Effect of ZrO(2) Nanomaterials on Wettability and Interfacial Characteristics of Al-19Cu-11Si-2Sn Filler Metal for Low Temperature Al to Cu Dissimilar Brazing
title_short Effect of ZrO(2) Nanomaterials on Wettability and Interfacial Characteristics of Al-19Cu-11Si-2Sn Filler Metal for Low Temperature Al to Cu Dissimilar Brazing
title_sort effect of zro(2) nanomaterials on wettability and interfacial characteristics of al-19cu-11si-2sn filler metal for low temperature al to cu dissimilar brazing
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6215161/
https://www.ncbi.nlm.nih.gov/pubmed/30282941
http://dx.doi.org/10.3390/nano8100784
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